Chemical and biological characterization of technetium(I) and rhenium(I) tricarbonyl complexes with dithioether ligands serving as linkers for coupling the Tc(CO)3 and Re(CO)3 moieties to biologically active molecules

被引:99
作者
Pietzsch, HJ
Gupta, A
Reisgys, M
Drews, A
Seifert, S
Syhre, R
Spies, H
Alberto, R
Abram, U
Schubiger, PA
Johannsen, B
机构
[1] Forschungszentrum Rossendorf EV, Inst Bioanorgan Radiopharmaceut Chem, D-01314 Dresden, Germany
[2] Forschungszentrum Rossendorf EV, Inst Radiochem, D-01314 Dresden, Germany
[3] Paul Scherrer Inst, Abt Radiopharm, CH-5232 Villigen, Switzerland
关键词
D O I
10.1021/bc990162o
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The organometallic precursor (NEt4)(2)[ReBr3(CO)(3)] was reacted with bidendate dithioethers (L) of the general formula H3C-S-CH2CH2-S-R (R = -CH2CH2COOH, CH2-C drop CH) and R'-S-CH2CH2-S-R' (R' = CH3CH2-, CH3CH2-OH, and CH2COOH) in methanol to form stable rhenium(I) tricarbonyl complexes of the general composition [ReBr(CO)(3)L]. Under these conditions, the functional groups do not participate in the coordination. As a prototypic representative of this type of Re compounds, the propargylic group bearing complex [ReBr(CO3)(H3C-S-CH2CH2-S-CH2C drop CH)] Re2 was studied by X-ray diffraction analysis. Its molecular structure exhibits a slightly distorted octahedron with facial coordination of the carbonyl ligands. The potentially tetradentate ligand HO-CH2CH2-S-CH2CH2-S-CH2CH2-OH was reacted with the trinitrato precursor [Re(NO3)(3)(CO)(3)](2-) to yield a cationic complex [Re(CO)(3)(HO-CH2CH2-S-CH2CH2-S-CH2CH2-OH) Re8 which shows the coordination of one hydroxy group. Re8 has been characterized by correct elemental analysis, infrared spectroscopy, capillary electrophoresis, and X-ray diffraction analysis. Ligand exchange reaction of the carboxylic group bearing ligands H3C-S-CH2CH2-S-CH2CH2-COOH and HOOC-CH2-S-CH2CH2-S-CH2-COOH with (NEt4)(2)[ReBr3(CO)(3)] in water and with equimolar amounts of NaOH led to complexes in which the bromide is replaced by the carboxylic group. The X-ray structure analysis of the complex [Re(CO)(3)(OOC-CH2-S-CH2CH2-S-CH2-COOH)] Re6 shows the second carboxylic group noncoordinated offering an ideal site for functionalization or coupling a biomolecule. The no-carrier-added preparation of the analogous Tc-99m(I) carbonyl thioether complexes could be performed using the precursor fac-[Tc-99m(H2O)(3)(CO)(3)](+), with yields up to 90%. The behavior of the chlorine containing Tc-99m complex [(TcCl)-Tc-99m(CO)(3)(CH3CH2-S-CH2CH2-S-CH2CH3)] Tc1 in aqueous solution at physiological pH value was investigated. In saline, the chromatographically separated compound was stable for at least 120 min. However, in chloride-free aqueous solution, a water-coordinated cationic species Tc1a of the proposed composition[Tc-99m(H2O)(CO)(3)(CH3CH2-S-CH2CH2-S-CH2CH3)](+) occurred. The cationic charge of the conversion product was confirmed by capillary electrophoresis. By the introduction of a carboxylic group into the thioether Ligand as a third donor group, the conversion could be suppressed and thus the neutrality of the complex preserved. Biodistribution studies in the rat demonstrated for the neutral complexes [(TcCl)-Tc-99m(CO)(3)(CH3CH2-S-CH2CH2-S-CH2CH3)] Tc1 and [(TcCl)-Tc-99m(CO)(3)(CH2-S-CH2CH2-S-CH2-C drop CH)] Tc2 a significant initial brain uptake (1.03 +/- 0.25% and 0.78 +/- 0.08% ID/organ at 5 min. p.i.). Challenge experiments with glutathione clearly indicated that no transchelation reaction occurs in vivo.
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页码:414 / 424
页数:11
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